The Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a coordinated community effort to improve the integration of land use change (LUC) in regional climate models (RCMs) and to quantify the biogeophysical effects of LUC on local to regional climate in Europe. In the first phase of LUCAS, nine RCMs are used to explore the biogeophysical impacts of re-/afforestation over Europe: two idealized experiments representing respectively a non-forested and a maximally forested Europe are compared in order to quantify spatial and temporal variations in the regional climate sensitivity to forestation. We find some robust features in the simulated response to forestation. In particular, all models indicate a year-round decrease in ...
In this study, we present a new methodology for evaluating the biogeophysical impact of land use cha...
Humans currently utilize 69-76 % of the ice-free land surface. The associated Land Use and Land Cove...
The biogeophysical effects of severe forestation are quantified using a new ensemble of regional cli...
The Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a coordinated community e...
The Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a coordinated community e...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
In this study, we present a new methodology for evaluating the biogeophysical impact of land use cha...
The biophysical effects of reforestation and afforestation (herein jointly called re/afforestation) ...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
In recent years, afforestation has been proposed as a promising strategy for climate change mitigati...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
In this study, we present a new methodology for evaluating the biogeophysical impact of land use cha...
Humans currently utilize 69-76 % of the ice-free land surface. The associated Land Use and Land Cove...
The biogeophysical effects of severe forestation are quantified using a new ensemble of regional cli...
The Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a coordinated community e...
The Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a coordinated community e...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
International audienceThe Land Use and Climate Across Scales Flagship Pilot Study (LUCAS FPS) is a c...
In this study, we present a new methodology for evaluating the biogeophysical impact of land use cha...
The biophysical effects of reforestation and afforestation (herein jointly called re/afforestation) ...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
In recent years, afforestation has been proposed as a promising strategy for climate change mitigati...
Previous studies based on observations and models are uncertain about the biophysical impact of af- ...
In this study, we present a new methodology for evaluating the biogeophysical impact of land use cha...
Humans currently utilize 69-76 % of the ice-free land surface. The associated Land Use and Land Cove...
The biogeophysical effects of severe forestation are quantified using a new ensemble of regional cli...